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High frequency MoS_2 nanomechanical resonators

机译:高频MoS_2纳米机械谐振器

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摘要

Molybdenum disulfide (MoS_2), a layered semiconducting material in transition metal dichalcogenides (TMDCs), as thin as a monolayer (consisting of a hexagonal plane of Mo atoms covalently bonded and sandwiched between two planes of S atoms, in a trigonal prismatic structure), has demonstrated unique properties and strong promises for emerging two-dimensional (2D) nanodevices. Here we report on the demonstration of movable and vibrating MoS_2 nanodevices, where MoS_2 diaphragms as thin as 6 nm (a stack of 9 monolayers) exhibit fundamental-mode nanomechanical resonances up to f _0 ~ 60 MHz in the very high frequency (VHF) band, and frequency-quality (Q) factor products up to f_0 × Q ~ 2 × 10~(10)Hz, all at room temperature. The experimental results from many devices with a wide range of thicknesses and lateral sizes, in combination with theoretical analysis, quantitatively elucidate the elastic transition regimes in these ultrathin MoS_2 nanomechanical resonators. We further delineate a roadmap for scaling MoS_2 2D resonators and transducers toward microwave frequencies. This study also opens up possibilities for new classes of vibratory devices to exploit strain- and dynamics-engineered ultrathin semiconducting 2D crystals.
机译:二硫化钼(MoS_2),过渡金属二硫化碳(TMDCs)中的层状半导体材料,其厚度薄至单层(由共价键合并夹在S原子两个平面之间的三方棱柱结构的Mo原子六边形平面组成),已经展示了新兴的二维(2D)纳米器件的独特性能和广阔前景。在这里,我们报告了有关可移动和振动的MoS_2纳米器件的演示,其中,薄至6 nm(9个单层的堆叠)的MoS_2膜片在甚高频(VHF)波段中显示出高达f _0〜60 MHz的基模纳米机械共振。 ,并且频率质量(Q)乘积在室温下均高达f_0×Q〜2×10〜(10)Hz。来自许多具有广泛厚度和横向尺寸的装置的实验结果,结合理论分析,定量地阐明了这些超薄MoS_2纳米机械谐振器中的弹性过渡机制。我们进一步描绘了将MoS_2 2D谐振器和换能器向微波频率扩展的路线图。这项研究还为新型振动设备开辟了利用应变和动力学设计的超薄半导体2D晶体的可能性。

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